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Astrophysical He-3(alpha,gamma)Be-7 and H-3(alpha,gamma)Li-7 direct capture reactions in a potential-model approach

机译:天体物理HE-3(α,γ)BE-7和H-3(α,γ)LI-7以潜在的模型方法直接捕获反应

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摘要

The astrophysical He-3(alpha,gamma)Be-7 and H-3(alpha,gamma)Li-7 direct capture processes are studied in the framework of the two-body model with potentials of a simple Gaussian form, which describe correctly the phase shifts in the s, p, d, and f waves, as well as the binding energy and the asymptotic normalization constant of the ground p(3/2) and the first excited p(1/2) bound states. It is shown that the E1 transition from the initial s wave to the final p waves is strongly dominant in both capture reactions. On this basis the s-wave potential parameters are adjusted to reproduce the new data of the LUNA Collaboration around 100 keV and the newest data at the Gamov peak estimated with the help of the observed neutrino fluxes from the sun, S-34(23(-5)(+6) keV) = 0.548 +/- 0.054 keVb for the astrophysical S factor of the capture process He-3(alpha,gamma)Be-7. The resulting model describes well the astrophysical S factor in the low-energy big-bang nucleosynthesis region of 180-400 keV; however, it has a tendency to underestimate the data above 0.5 MeV. The energy dependence of the S factor is mostly consistent with the data and the results of the no-core shell model with continuum, but substantially different from the fermionic molecular dynamics model predictions. Two-body potentials, adjusted for the properties of the Be-7 nucleus, He-3 + alpha elastic scattering data, and the astrophysical S factor of the He-3(alpha,gamma)Be-7 direct capture reaction, are able to reproduce the properties of the 7Li nucleus, the binding energies of the ground 3/2- and first excited 1/2-states, and phase shifts of the H-3 + alpha elastic scattering in partial waves. Most importantly, these potential models can successfully describe both absolute value and energy dependence of the existing experimental data for the mirror astrophysical H-3(alpha,gamma)Li-7 capture reaction without any additional adjustment of the parameters.
机译:在双体模型的框架中研究了天体物理HE-3(α,γ)BE-7和H-3(Alpha,γ)Li-7直接捕获过程,其潜在的简单高斯形式的潜力正确描述在S,P,D和F波中的相移,以及接地P(3/2)和第一激发P(1/2)结合状态的结合能量和渐近归一化常数。结果表明,在捕获反应中,从初始S波从初始S波过渡到最终P波。在此基础上,调整S波电位参数以再现100keV的Luna协作的新数据,并且通过从Sun,S-34的观察到的中微子通量的帮助估计了GAMOV峰值的最新数据( -5)(+ 6)kev)= 0.548 +/- 0.054 kevb用于捕获过程的天体物理S因子He-3(α,γ)BE-7。结果模型描述了180-400 kev的低能量大熊核酸区区中的天体物理S因子;然而,它具有低于0.5 meV的数据的趋势。 S因子的能量依赖性主要与具有连续核的无核壳模型的数据和结果一致,但与Fermionic分子动力学模型预测基本上不同。调整为BE-7核,HE-3 +α弹性散射数据的性质,HE-3(α,γ)为-7直接捕获反应的天体物理S因子进行调整的两体电位。能够再现7LI核的性质,地面3 / 2-和第一激发的1/2态的结合能量,以及在部分波中的H-3 +α弹性散射的相移。最重要的是,这些潜在模型可以成功地描述现有的镜子天体物理H-3(α,γ)Li-7捕获反应的现有实验数据的绝对值和能量依赖性,而无需任何额外的参数调整。

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